In this paper, the kinematic model of an omnidirectional mobile robot with special MY wheels is built to analyze its kinematics performance on vibration, control and errors that are caused by the specific structural feature of MY wheels. Trajectory errors, which are induced by vibration in the motion, are reduced distinctly by the proposed control method of both optimized contact distance and improved rotational speed of MY wheel. It can improve the stability of movement for the robot by employing sinusoidal control law to control the angular velocity of MY wheel reasonably. Simulation results are provided to demonstrate the performance of proposed approaches
This bachelor’s thesis describes controlling of omnidirectional chassis based on omnidirectional (‚s...
International audienceThis article addresses the omni directional mechanical architectures problemat...
This paper presents a study of an omnidirectional mobile robot based on a screw wheels mechanism. A ...
In this paper, the kinematic model of an omnidirectional mobile robot with special MY wheels is buil...
The mobile robot with an orthogonal-wheel assembly has omnidirectional motion ability and simple kin...
The mobile robot with an orthogonal-wheel assembly has omnidirectional motion ability and simple kin...
This paper presents methodologies for kinematic modeling and nonlinear control of an omnidirectional...
The article presents results of a research and development work on a suspension of an autonomous mob...
A novel omnidirectional wheeled mobile robot, mainly composed of three special wheeled structures-MY...
A novel omnidirectional wheeled mobile robot, mainly composed of three special wheeled structures-MY...
In recent years, autonomous mobile platforms are finding an increasing range of applications in insp...
Most omni-directional mobile robots have to change their trajectory for avoiding obstacles regardles...
The paper investigates and proposes a solution for the smooth control of a wheeled omnidirectional m...
Abstract: The paper investigates and proposes a solution for the smooth control of a wheeled omnidir...
International audienceThis article addresses the omni directional mechanical architectures problemat...
This bachelor’s thesis describes controlling of omnidirectional chassis based on omnidirectional (‚s...
International audienceThis article addresses the omni directional mechanical architectures problemat...
This paper presents a study of an omnidirectional mobile robot based on a screw wheels mechanism. A ...
In this paper, the kinematic model of an omnidirectional mobile robot with special MY wheels is buil...
The mobile robot with an orthogonal-wheel assembly has omnidirectional motion ability and simple kin...
The mobile robot with an orthogonal-wheel assembly has omnidirectional motion ability and simple kin...
This paper presents methodologies for kinematic modeling and nonlinear control of an omnidirectional...
The article presents results of a research and development work on a suspension of an autonomous mob...
A novel omnidirectional wheeled mobile robot, mainly composed of three special wheeled structures-MY...
A novel omnidirectional wheeled mobile robot, mainly composed of three special wheeled structures-MY...
In recent years, autonomous mobile platforms are finding an increasing range of applications in insp...
Most omni-directional mobile robots have to change their trajectory for avoiding obstacles regardles...
The paper investigates and proposes a solution for the smooth control of a wheeled omnidirectional m...
Abstract: The paper investigates and proposes a solution for the smooth control of a wheeled omnidir...
International audienceThis article addresses the omni directional mechanical architectures problemat...
This bachelor’s thesis describes controlling of omnidirectional chassis based on omnidirectional (‚s...
International audienceThis article addresses the omni directional mechanical architectures problemat...
This paper presents a study of an omnidirectional mobile robot based on a screw wheels mechanism. A ...